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33Mn2V油井管张力减径过程的三维热力耦合有限元模拟
引用本文:王辅忠,刘国权,张勇钢. 33Mn2V油井管张力减径过程的三维热力耦合有限元模拟[J]. 北京科技大学学报, 2004, 26(5): 538-541
作者姓名:王辅忠  刘国权  张勇钢
作者单位:1. 北京科技大学材料科学与工程学院,北京,100083;渤海大学物理系,锦州,121003
2. 北京科技大学材料科学与工程学院,北京,100083
3. 无锡西姆莱斯钢管有限公司,无锡,214026
摘    要:利用MARC/AutoForge3.1元件,使用三维弹塑性热力耦合有限元方法模拟采用新型油井管用钢33Mn2V热轧制管的双道次张力减径过程,并直观地显示了三维管件材料内部和表面不同方位的金属流动、应力、应变和温度演化情况.模拟结果表明:不论是工件表面还是内部,在张力减径过程中金属流动、应变、应力和温度分布都是不均匀的;分析成品管显微组织时应当考虑这些因素.

关 键 词:无缝钢管  热轧  张力减径  有限元模拟  热力耦合仿真  油井管用钢  张力减径过程  三维弹塑性  热力耦合  有限元模拟  Tubes  Oil Well  Steel  Process  FEM Simulation  因素  显微组织  成品管  分析  均匀  温度分布  工件表面  模拟结果  情况  温度演化
修稿时间:2003-11-20

3D Thermo-mechanical Coupled FEM Simulation on Tube Tension-reducing Process of 33Mn2V Steel for Oil Well Tubes
WANG Fuzhong,LIU Guoquan,ZHANG YonggangMaterials Science and Engineering School,University of Science and Technology Beijing,Beijing ,China. 3D Thermo-mechanical Coupled FEM Simulation on Tube Tension-reducing Process of 33Mn2V Steel for Oil Well Tubes[J]. Journal of University of Science and Technology Beijing, 2004, 26(5): 538-541
Authors:WANG Fuzhong  LIU Guoquan  ZHANG YonggangMaterials Science  Engineering School  University of Science  Technology Beijing  Beijing   China
Affiliation:WANG Fuzhong,LIU Guoquan,ZHANG YonggangMaterials Science and Engineering School,University of Science and Technology Beijing,Beijing 100083,ChinaDepartment of Physics,Bohai University,Jinzhou 121003,China Wuxi Seamless Steel Tube Co. Ltd.,Wuxi 214026,China
Abstract:Using the software MARC/AutoForge3.1, a three-dimensional thermo-mechanical coupled elasto-plastic Minite Element Method (FEM) was used for simulation of a two-pass tube tension-reducing process of 33Mn2V steel for oil well tubes. Simulated results intuitionally visualize the metal flow and dynamic evolution of strain, stress and temperature, especially inside the work-piece, and show that their non-uniform spatial distributions on the longitudinal and transverse sections are a distinct characteristic of the rube tension-reducing process.
Keywords:seamless tubes  tube tension-reducing  FEM  thermo-mechanical coupled simulation
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